Alert button
Picture for Despina Kontos

Despina Kontos

Alert button

Quantitative CT texture-based method to predict diagnosis and prognosis of fibrosing interstitial lung disease patterns

Add code
Bookmark button
Alert button
Jun 20, 2022
Babak Haghighi, Warren B. Gefter, Lauren Pantalone, Despina Kontos, Eduardo Mortani Barbosa Jr

Figure 1 for Quantitative CT texture-based method to predict diagnosis and prognosis of fibrosing interstitial lung disease patterns
Figure 2 for Quantitative CT texture-based method to predict diagnosis and prognosis of fibrosing interstitial lung disease patterns
Figure 3 for Quantitative CT texture-based method to predict diagnosis and prognosis of fibrosing interstitial lung disease patterns
Figure 4 for Quantitative CT texture-based method to predict diagnosis and prognosis of fibrosing interstitial lung disease patterns
Viaarxiv icon

MammoDL: Mammographic Breast Density Estimation using Federated Learning

Add code
Bookmark button
Alert button
Jun 11, 2022
Keshava Katti, Ramya Muthukrishnan, Angelina Heyler, Sarthak Pati, Aprupa Alahari, Michael Sanborn, Emily F. Conant, Christopher Scott, Stacey Winham, Celine Vachon, Pratik Chaudhari, Despina Kontos, Spyridon Bakas

Figure 1 for MammoDL: Mammographic Breast Density Estimation using Federated Learning
Figure 2 for MammoDL: Mammographic Breast Density Estimation using Federated Learning
Figure 3 for MammoDL: Mammographic Breast Density Estimation using Federated Learning
Figure 4 for MammoDL: Mammographic Breast Density Estimation using Federated Learning
Viaarxiv icon

GaNDLF: A Generally Nuanced Deep Learning Framework for Scalable End-to-End Clinical Workflows in Medical Imaging

Add code
Bookmark button
Alert button
Feb 26, 2021
Sarthak Pati, Siddhesh P. Thakur, Megh Bhalerao, Ujjwal Baid, Caleb Grenko, Brandon Edwards, Micah Sheller, Jose Agraz, Bhakti Baheti, Vishnu Bashyam, Parth Sharma, Babak Haghighi, Aimilia Gastounioti, Mark Bergman, Bjoern Menze, Despina Kontos, Christos Davatzikos, Spyridon Bakas

Figure 1 for GaNDLF: A Generally Nuanced Deep Learning Framework for Scalable End-to-End Clinical Workflows in Medical Imaging
Figure 2 for GaNDLF: A Generally Nuanced Deep Learning Framework for Scalable End-to-End Clinical Workflows in Medical Imaging
Figure 3 for GaNDLF: A Generally Nuanced Deep Learning Framework for Scalable End-to-End Clinical Workflows in Medical Imaging
Figure 4 for GaNDLF: A Generally Nuanced Deep Learning Framework for Scalable End-to-End Clinical Workflows in Medical Imaging
Viaarxiv icon

Deep-LIBRA: Artificial intelligence method for robust quantification of breast density with independent validation in breast cancer risk assessment

Add code
Bookmark button
Alert button
Nov 17, 2020
Omid Haji Maghsoudi, Aimilia Gastounioti, Christopher Scott, Lauren Pantalone, Fang-Fang Wu, Eric A. Cohen, Stacey Winham, Emily F. Conant, Celine Vachon, Despina Kontos

Figure 1 for Deep-LIBRA: Artificial intelligence method for robust quantification of breast density with independent validation in breast cancer risk assessment
Figure 2 for Deep-LIBRA: Artificial intelligence method for robust quantification of breast density with independent validation in breast cancer risk assessment
Figure 3 for Deep-LIBRA: Artificial intelligence method for robust quantification of breast density with independent validation in breast cancer risk assessment
Figure 4 for Deep-LIBRA: Artificial intelligence method for robust quantification of breast density with independent validation in breast cancer risk assessment
Viaarxiv icon